mirror of
https://github.com/topjohnwu/Magisk.git
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276 lines
7.9 KiB
C++
276 lines
7.9 KiB
C++
#pragma once
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#include <stdint.h>
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#include "format.h"
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struct boot_img_hdr_base {
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char magic[8];
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uint32_t kernel_size; /* size in bytes */
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uint32_t kernel_addr; /* physical load addr */
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uint32_t ramdisk_size; /* size in bytes */
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uint32_t ramdisk_addr; /* physical load addr */
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uint32_t second_size; /* size in bytes */
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uint32_t second_addr; /* physical load addr */
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} __attribute__((packed));
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struct boot_img_hdr_v0 : public boot_img_hdr_base {
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uint32_t tags_addr; /* physical addr for kernel tags */
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uint32_t page_size; /* flash page size we assume */
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/* In header v1, this field is used for header version
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* However, on some devices like Samsung, this field is used to store DTB
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* We will treat this field differently based on its value */
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union {
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uint32_t header_version; /* the version of the header */
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uint32_t extra_size; /* extra blob size in bytes */
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};
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/* operating system version and security patch level; for
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* version "A.B.C" and patch level "Y-M-D":
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* ver = A << 14 | B << 7 | C (7 bits for each of A, B, C)
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* lvl = ((Y - 2000) & 127) << 4 | M (7 bits for Y, 4 bits for M)
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* os_version = ver << 11 | lvl */
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uint32_t os_version;
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char name[16]; /* asciiz product name */
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char cmdline[512];
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char id[32]; /* timestamp / checksum / sha1 / etc */
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/* Supplemental command line data; kept here to maintain
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* binary compatibility with older versions of mkbootimg */
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char extra_cmdline[1024];
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} __attribute__((packed));
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struct boot_img_hdr_v1 : public boot_img_hdr_v0 {
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uint32_t recovery_dtbo_size; /* size in bytes for recovery DTBO/ACPIO image */
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uint64_t recovery_dtbo_offset; /* offset to recovery dtbo/acpio in boot image */
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uint32_t header_size;
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} __attribute__((packed));
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struct boot_img_hdr_v2 : public boot_img_hdr_v1 {
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uint32_t dtb_size; /* size in bytes for DTB image */
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uint64_t dtb_addr; /* physical load address for DTB image */
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} __attribute__((packed));
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// Default to hdr v1
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typedef boot_img_hdr_v2 boot_img_hdr;
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// Special Samsung header
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struct boot_img_hdr_pxa : public boot_img_hdr_base {
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uint32_t extra_size; /* extra blob size in bytes */
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uint32_t unknown; /* unknown value */
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uint32_t tags_addr; /* physical addr for kernel tags */
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uint32_t page_size; /* flash page size we assume */
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char name[24]; /* asciiz product name */
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char cmdline[512];
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char id[32]; /* timestamp / checksum / sha1 / etc */
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/* Supplemental command line data; kept here to maintain
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* binary compatibility with older versions of mkbootimg */
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char extra_cmdline[1024];
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} __attribute__((packed));
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/*
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** +-----------------+
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** | boot header | 1 page
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** +-----------------+
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** | kernel | n pages
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** +-----------------+
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** | ramdisk | m pages
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** +-----------------+
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** | second stage | o pages
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** +-----------------+
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** | extra blob | p pages
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** +-----------------+
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** | recovery dtbo | q pages
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** +-----------------+
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** | dtb | r pages
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** +-----------------+
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**
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** n = (kernel_size + page_size - 1) / page_size
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** m = (ramdisk_size + page_size - 1) / page_size
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** o = (second_size + page_size - 1) / page_size
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** p = (extra_size + page_size - 1) / page_size
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** q = (recovery_dtbo_size + page_size - 1) / page_size
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** r = (dtb_size + page_size - 1) / page_size
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**
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** 0. all entities are page_size aligned in flash
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** 1. kernel and ramdisk are required (size != 0)
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** 2. second is optional (second_size == 0 -> no second)
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** 3. load each element (kernel, ramdisk, second) at
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** the specified physical address (kernel_addr, etc)
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** 4. prepare tags at tag_addr. kernel_args[] is
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** appended to the kernel commandline in the tags.
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** 5. r0 = 0, r1 = MACHINE_TYPE, r2 = tags_addr
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** 6. if second_size != 0: jump to second_addr
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** else: jump to kernel_addr
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*/
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struct mtk_hdr {
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uint32_t magic; /* MTK magic */
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uint32_t size; /* Size of the content */
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char name[32]; /* The type of the header */
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} __attribute__((packed));
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struct dhtb_hdr {
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char magic[8]; /* DHTB magic */
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uint8_t checksum[40]; /* Payload SHA256, whole image + SEANDROIDENFORCE + 0xFFFFFFFF */
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uint32_t size; /* Payload size, whole image + SEANDROIDENFORCE + 0xFFFFFFFF */
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} __attribute__((packed));
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struct blob_hdr {
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char secure_magic[20]; /* "-SIGNED-BY-SIGNBLOB-" */
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uint32_t datalen; /* 0x00000000 */
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uint32_t signature; /* 0x00000000 */
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char magic[16]; /* "MSM-RADIO-UPDATE" */
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uint32_t hdr_version; /* 0x00010000 */
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uint32_t hdr_size; /* Size of header */
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uint32_t part_offset; /* Same as size */
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uint32_t num_parts; /* Number of partitions */
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uint32_t unknown[7]; /* All 0x00000000 */
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char name[4]; /* Name of partition */
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uint32_t offset; /* offset in blob where this partition starts */
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uint32_t size; /* Size of data */
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uint32_t version; /* 0x00000001 */
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} __attribute__((packed));
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// Flags
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#define MTK_KERNEL 1 << 1
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#define MTK_RAMDISK 1 << 2
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#define CHROMEOS_FLAG 1 << 3
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#define DHTB_FLAG 1 << 4
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#define SEANDROID_FLAG 1 << 5
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#define LG_BUMP_FLAG 1 << 6
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#define SHA256_FLAG 1 << 7
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#define BLOB_FLAG 1 << 8
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#define NOOKHD_FLAG 1 << 9
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#define ACCLAIM_FLAG 1 << 10
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struct dyn_img_hdr {
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#define dyn_access(x) (pxa ? hdr_pxa->x : v2_hdr->x)
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#define dyn_get(name, type) \
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type name() const { return dyn_access(name); }
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#define dyn_ref(name, type) \
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type &name() { return dyn_access(name); }
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#define v2_ref(name, type, alt) \
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type &name() { if (pxa) { alt = 0; return alt; } return v2_hdr->name; }
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dyn_ref(page_size, uint32_t);
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dyn_get(name, char *);
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dyn_get(cmdline, char *);
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dyn_get(id, char *);
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dyn_get(extra_cmdline, char *);
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v2_ref(os_version, uint32_t, j32);
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v2_ref(recovery_dtbo_size, uint32_t, j32);
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v2_ref(recovery_dtbo_offset, uint64_t, j64);
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v2_ref(header_size, uint32_t, j32);
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v2_ref(dtb_size, uint32_t, j32);
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dyn_img_hdr() : pxa(false), img_hdr(nullptr) {}
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~dyn_img_hdr() {
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if (pxa)
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delete hdr_pxa;
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else
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delete v2_hdr;
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}
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uint32_t header_version() {
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// There won't be v4 header any time soon...
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// If larger than 4, assume this field will be treated as extra_size
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return pxa || v2_hdr->header_version > 4 ? 0 : v2_hdr->header_version;
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}
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uint32_t &extra_size() {
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// If header version > 0, we should treat this field as header_version
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if (header_version()) {
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j32 = 0;
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return j32;
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}
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return dyn_access(extra_size);
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}
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size_t hdr_size() {
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return pxa ? sizeof(boot_img_hdr_pxa) : sizeof(boot_img_hdr);
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}
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void set_hdr(boot_img_hdr *h) {
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v2_hdr = h;
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}
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void set_hdr(boot_img_hdr_pxa *h) {
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hdr_pxa = h;
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pxa = true;
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}
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boot_img_hdr_base *operator-> () const {
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return img_hdr;
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};
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boot_img_hdr_base * const &operator* () const {
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return img_hdr;
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}
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private:
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bool pxa;
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union {
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/* Main header could be either AOSP or PXA,
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* but both of them is a base header.
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* Same address can be interpreted in 3 ways */
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boot_img_hdr_base *img_hdr; /* Common base header */
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boot_img_hdr *v2_hdr; /* AOSP v2 header */
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boot_img_hdr_pxa *hdr_pxa; /* Samsung PXA header */
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};
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static uint32_t j32;
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static uint64_t j64;
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};
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struct boot_img {
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// Memory map of the whole image
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uint8_t *map_addr;
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size_t map_size;
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// Headers
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dyn_img_hdr hdr; /* Android image header */
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mtk_hdr *k_hdr; /* MTK kernel header */
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mtk_hdr *r_hdr; /* MTK ramdisk header */
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blob_hdr *b_hdr; /* Tegra blob header */
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// Flags to indicate the state of current boot image
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uint16_t flags;
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// The format of kernel and ramdisk
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format_t k_fmt;
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format_t r_fmt;
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// Pointer to dtb that is appended after kernel
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uint8_t *kernel_dtb;
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uint32_t kernel_dt_size;
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// Pointer to end of image
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uint8_t *tail;
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size_t tail_size;
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// Pointers to blocks defined in header
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uint8_t *kernel;
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uint8_t *ramdisk;
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uint8_t *second;
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uint8_t *extra;
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uint8_t *recov_dtbo;
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uint8_t *dtb;
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~boot_img();
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int parse_file(const char *);
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int parse_image(uint8_t *);
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void find_dtb();
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void print_hdr();
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};
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